Automated Multi-Atlas Segmentation of Hippocampal and Extrahippocampal Subregions in Alzheimer's Disease at 3T and 7T: What Atlas Composition Works Best?
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2018-04-10
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Abstract
BACKGROUND: Multi-atlas segmentation, a popular technique implemented in the Automated Segmentation of Hippocampal Subfields (ASHS) software, utilizes multiple expert-labelled images ("atlases") to delineate medial temporal lobe substructures. This multi-atlas method is increasingly being employed in early Alzheimer's disease (AD) research, it is therefore becoming important to know how the construction of the atlas set in terms of proportions of controls and patients with mild cognitive impairment (MCI) and/or AD affects segmentation accuracy. OBJECTIVE: To evaluate whether the proportion of controls in the training sets affects the segmentation accuracy of both controls and patients with MCI and/or early AD at 3T and 7T. METHODS: We performed cross-validation experiments varying the proportion of control subjects in the training set, ranging from a patient-only to a control-only set. Segmentation accuracy of the test set was evaluated by the Dice similarity coeffiecient (DSC). A two-stage statistical analysis was applied to determine whether atlas composition is linked to segmentation accuracy in control subjects and patients, for 3T and 7T. RESULTS: The different atlas compositions did not significantly affect segmentation accuracy at 3T and for patients at 7T. For controls at 7T, including more control subjects in the training set significantly improves the segmentation accuracy, but only marginally, with the maximum of 0.0003 DSC improvement per percent increment of control subject in the training set. CONCLUSION: ASHS is robust in this study, and the results indicate that future studies investigating hippocampal subfields in early AD populations can be flexible in the selection of their atlas compositions.
Keywords
Alzheimer's disease, ASHS, high-field magnetic resonance imaging, mild cognitive impairment, multi-atlas label fusion, Alzheimer’s disease, Humans, Middle Aged, Male, Magnetic Resonance Imaging, Hippocampus/diagnostic imaging, Image Processing, Computer-Assisted/methods, Aged, 80 and over, Brain Mapping, Female, Aged, Alzheimer Disease/diagnostic imaging, Cognitive Dysfunction/diagnostic imaging, Taverne, Geriatrics and Gerontology, Psychiatry and Mental health, Clinical Psychology, General Neuroscience, Research Support, Non-U.S. Gov't, Journal Article, Research Support, N.I.H., Extramural
Citation
Xie, L, Shinohara, R T, Ittyerah, R, Kuijf, H J, Pluta, J B, Blom, K, Kooistra, M, Reijmer, Y D, Koek, H L, Zwanenburg, J J M, Wang, H, Luijten, P R, Geerlings, M I, Das, S R, Biessels, G J, Wolk, D A, Yushkevich, P A & Wisse, L E M 2018, 'Automated Multi-Atlas Segmentation of Hippocampal and Extrahippocampal Subregions in Alzheimer's Disease at 3T and 7T : What Atlas Composition Works Best?', Journal of Alzheimer's Disease, vol. 63, no. 1, pp. 217-225. https://doi.org/10.3233/JAD-170932